1 // SPDX-License-Identifier: GPL-2.0 2 /* Copyright (c) 2019 Facebook */ 3 #include <linux/rculist.h> 4 #include <linux/list.h> 5 #include <linux/hash.h> 6 #include <linux/types.h> 7 #include <linux/spinlock.h> 8 #include <linux/bpf.h> 9 #include <linux/btf_ids.h> 10 #include <linux/bpf_local_storage.h> 11 #include <net/sock.h> 12 #include <uapi/linux/sock_diag.h> 13 #include <uapi/linux/btf.h> 14 #include <linux/rcupdate.h> 15 #include <linux/rcupdate_trace.h> 16 #include <linux/rcupdate_wait.h> 17 18 #define BPF_LOCAL_STORAGE_CREATE_FLAG_MASK (BPF_F_NO_PREALLOC | BPF_F_CLONE) 19 20 static struct bpf_local_storage_map_bucket * 21 select_bucket(struct bpf_local_storage_map *smap, 22 struct bpf_local_storage_elem *selem) 23 { 24 return &smap->buckets[hash_ptr(selem, smap->bucket_log)]; 25 } 26 27 static int mem_charge(struct bpf_local_storage_map *smap, void *owner, u32 size) 28 { 29 struct bpf_map *map = &smap->map; 30 31 if (!map->ops->map_local_storage_charge) 32 return 0; 33 34 return map->ops->map_local_storage_charge(smap, owner, size); 35 } 36 37 static void mem_uncharge(struct bpf_local_storage_map *smap, void *owner, 38 u32 size) 39 { 40 struct bpf_map *map = &smap->map; 41 42 if (map->ops->map_local_storage_uncharge) 43 map->ops->map_local_storage_uncharge(smap, owner, size); 44 } 45 46 static struct bpf_local_storage __rcu ** 47 owner_storage(struct bpf_local_storage_map *smap, void *owner) 48 { 49 struct bpf_map *map = &smap->map; 50 51 return map->ops->map_owner_storage_ptr(owner); 52 } 53 54 static bool selem_linked_to_storage_lockless(const struct bpf_local_storage_elem *selem) 55 { 56 return !hlist_unhashed_lockless(&selem->snode); 57 } 58 59 static bool selem_linked_to_storage(const struct bpf_local_storage_elem *selem) 60 { 61 return !hlist_unhashed(&selem->snode); 62 } 63 64 static bool selem_linked_to_map_lockless(const struct bpf_local_storage_elem *selem) 65 { 66 return !hlist_unhashed_lockless(&selem->map_node); 67 } 68 69 static bool selem_linked_to_map(const struct bpf_local_storage_elem *selem) 70 { 71 return !hlist_unhashed(&selem->map_node); 72 } 73 74 struct bpf_local_storage_elem * 75 bpf_selem_alloc(struct bpf_local_storage_map *smap, void *owner, 76 void *value, bool charge_mem, gfp_t gfp_flags) 77 { 78 struct bpf_local_storage_elem *selem; 79 80 if (charge_mem && mem_charge(smap, owner, smap->elem_size)) 81 return NULL; 82 83 selem = bpf_map_kzalloc(&smap->map, smap->elem_size, 84 gfp_flags | __GFP_NOWARN); 85 if (selem) { 86 if (value) 87 copy_map_value(&smap->map, SDATA(selem)->data, value); 88 return selem; 89 } 90 91 if (charge_mem) 92 mem_uncharge(smap, owner, smap->elem_size); 93 94 return NULL; 95 } 96 97 void bpf_local_storage_free_rcu(struct rcu_head *rcu) 98 { 99 struct bpf_local_storage *local_storage; 100 101 /* If RCU Tasks Trace grace period implies RCU grace period, do 102 * kfree(), else do kfree_rcu(). 103 */ 104 local_storage = container_of(rcu, struct bpf_local_storage, rcu); 105 if (rcu_trace_implies_rcu_gp()) 106 kfree(local_storage); 107 else 108 kfree_rcu(local_storage, rcu); 109 } 110 111 static void bpf_selem_free_rcu(struct rcu_head *rcu) 112 { 113 struct bpf_local_storage_elem *selem; 114 115 selem = container_of(rcu, struct bpf_local_storage_elem, rcu); 116 if (rcu_trace_implies_rcu_gp()) 117 kfree(selem); 118 else 119 kfree_rcu(selem, rcu); 120 } 121 122 /* local_storage->lock must be held and selem->local_storage == local_storage. 123 * The caller must ensure selem->smap is still valid to be 124 * dereferenced for its smap->elem_size and smap->cache_idx. 125 */ 126 static bool bpf_selem_unlink_storage_nolock(struct bpf_local_storage *local_storage, 127 struct bpf_local_storage_elem *selem, 128 bool uncharge_mem, bool use_trace_rcu) 129 { 130 struct bpf_local_storage_map *smap; 131 bool free_local_storage; 132 void *owner; 133 134 smap = rcu_dereference_check(SDATA(selem)->smap, bpf_rcu_lock_held()); 135 owner = local_storage->owner; 136 137 /* All uncharging on the owner must be done first. 138 * The owner may be freed once the last selem is unlinked 139 * from local_storage. 140 */ 141 if (uncharge_mem) 142 mem_uncharge(smap, owner, smap->elem_size); 143 144 free_local_storage = hlist_is_singular_node(&selem->snode, 145 &local_storage->list); 146 if (free_local_storage) { 147 mem_uncharge(smap, owner, sizeof(struct bpf_local_storage)); 148 local_storage->owner = NULL; 149 150 /* After this RCU_INIT, owner may be freed and cannot be used */ 151 RCU_INIT_POINTER(*owner_storage(smap, owner), NULL); 152 153 /* local_storage is not freed now. local_storage->lock is 154 * still held and raw_spin_unlock_bh(&local_storage->lock) 155 * will be done by the caller. 156 * 157 * Although the unlock will be done under 158 * rcu_read_lock(), it is more intuitive to 159 * read if the freeing of the storage is done 160 * after the raw_spin_unlock_bh(&local_storage->lock). 161 * 162 * Hence, a "bool free_local_storage" is returned 163 * to the caller which then calls then frees the storage after 164 * all the RCU grace periods have expired. 165 */ 166 } 167 hlist_del_init_rcu(&selem->snode); 168 if (rcu_access_pointer(local_storage->cache[smap->cache_idx]) == 169 SDATA(selem)) 170 RCU_INIT_POINTER(local_storage->cache[smap->cache_idx], NULL); 171 172 if (use_trace_rcu) 173 call_rcu_tasks_trace(&selem->rcu, bpf_selem_free_rcu); 174 else 175 kfree_rcu(selem, rcu); 176 177 return free_local_storage; 178 } 179 180 static void __bpf_selem_unlink_storage(struct bpf_local_storage_elem *selem, 181 bool use_trace_rcu) 182 { 183 struct bpf_local_storage *local_storage; 184 bool free_local_storage = false; 185 unsigned long flags; 186 187 if (unlikely(!selem_linked_to_storage_lockless(selem))) 188 /* selem has already been unlinked from sk */ 189 return; 190 191 local_storage = rcu_dereference_check(selem->local_storage, 192 bpf_rcu_lock_held()); 193 raw_spin_lock_irqsave(&local_storage->lock, flags); 194 if (likely(selem_linked_to_storage(selem))) 195 free_local_storage = bpf_selem_unlink_storage_nolock( 196 local_storage, selem, true, use_trace_rcu); 197 raw_spin_unlock_irqrestore(&local_storage->lock, flags); 198 199 if (free_local_storage) { 200 if (use_trace_rcu) 201 call_rcu_tasks_trace(&local_storage->rcu, 202 bpf_local_storage_free_rcu); 203 else 204 kfree_rcu(local_storage, rcu); 205 } 206 } 207 208 void bpf_selem_link_storage_nolock(struct bpf_local_storage *local_storage, 209 struct bpf_local_storage_elem *selem) 210 { 211 RCU_INIT_POINTER(selem->local_storage, local_storage); 212 hlist_add_head_rcu(&selem->snode, &local_storage->list); 213 } 214 215 void bpf_selem_unlink_map(struct bpf_local_storage_elem *selem) 216 { 217 struct bpf_local_storage_map *smap; 218 struct bpf_local_storage_map_bucket *b; 219 unsigned long flags; 220 221 if (unlikely(!selem_linked_to_map_lockless(selem))) 222 /* selem has already be unlinked from smap */ 223 return; 224 225 smap = rcu_dereference_check(SDATA(selem)->smap, bpf_rcu_lock_held()); 226 b = select_bucket(smap, selem); 227 raw_spin_lock_irqsave(&b->lock, flags); 228 if (likely(selem_linked_to_map(selem))) 229 hlist_del_init_rcu(&selem->map_node); 230 raw_spin_unlock_irqrestore(&b->lock, flags); 231 } 232 233 void bpf_selem_link_map(struct bpf_local_storage_map *smap, 234 struct bpf_local_storage_elem *selem) 235 { 236 struct bpf_local_storage_map_bucket *b = select_bucket(smap, selem); 237 unsigned long flags; 238 239 raw_spin_lock_irqsave(&b->lock, flags); 240 RCU_INIT_POINTER(SDATA(selem)->smap, smap); 241 hlist_add_head_rcu(&selem->map_node, &b->list); 242 raw_spin_unlock_irqrestore(&b->lock, flags); 243 } 244 245 void bpf_selem_unlink(struct bpf_local_storage_elem *selem, bool use_trace_rcu) 246 { 247 /* Always unlink from map before unlinking from local_storage 248 * because selem will be freed after successfully unlinked from 249 * the local_storage. 250 */ 251 bpf_selem_unlink_map(selem); 252 __bpf_selem_unlink_storage(selem, use_trace_rcu); 253 } 254 255 /* If cacheit_lockit is false, this lookup function is lockless */ 256 struct bpf_local_storage_data * 257 bpf_local_storage_lookup(struct bpf_local_storage *local_storage, 258 struct bpf_local_storage_map *smap, 259 bool cacheit_lockit) 260 { 261 struct bpf_local_storage_data *sdata; 262 struct bpf_local_storage_elem *selem; 263 264 /* Fast path (cache hit) */ 265 sdata = rcu_dereference_check(local_storage->cache[smap->cache_idx], 266 bpf_rcu_lock_held()); 267 if (sdata && rcu_access_pointer(sdata->smap) == smap) 268 return sdata; 269 270 /* Slow path (cache miss) */ 271 hlist_for_each_entry_rcu(selem, &local_storage->list, snode, 272 rcu_read_lock_trace_held()) 273 if (rcu_access_pointer(SDATA(selem)->smap) == smap) 274 break; 275 276 if (!selem) 277 return NULL; 278 279 sdata = SDATA(selem); 280 if (cacheit_lockit) { 281 unsigned long flags; 282 283 /* spinlock is needed to avoid racing with the 284 * parallel delete. Otherwise, publishing an already 285 * deleted sdata to the cache will become a use-after-free 286 * problem in the next bpf_local_storage_lookup(). 287 */ 288 raw_spin_lock_irqsave(&local_storage->lock, flags); 289 if (selem_linked_to_storage(selem)) 290 rcu_assign_pointer(local_storage->cache[smap->cache_idx], 291 sdata); 292 raw_spin_unlock_irqrestore(&local_storage->lock, flags); 293 } 294 295 return sdata; 296 } 297 298 static int check_flags(const struct bpf_local_storage_data *old_sdata, 299 u64 map_flags) 300 { 301 if (old_sdata && (map_flags & ~BPF_F_LOCK) == BPF_NOEXIST) 302 /* elem already exists */ 303 return -EEXIST; 304 305 if (!old_sdata && (map_flags & ~BPF_F_LOCK) == BPF_EXIST) 306 /* elem doesn't exist, cannot update it */ 307 return -ENOENT; 308 309 return 0; 310 } 311 312 int bpf_local_storage_alloc(void *owner, 313 struct bpf_local_storage_map *smap, 314 struct bpf_local_storage_elem *first_selem, 315 gfp_t gfp_flags) 316 { 317 struct bpf_local_storage *prev_storage, *storage; 318 struct bpf_local_storage **owner_storage_ptr; 319 int err; 320 321 err = mem_charge(smap, owner, sizeof(*storage)); 322 if (err) 323 return err; 324 325 storage = bpf_map_kzalloc(&smap->map, sizeof(*storage), 326 gfp_flags | __GFP_NOWARN); 327 if (!storage) { 328 err = -ENOMEM; 329 goto uncharge; 330 } 331 332 INIT_HLIST_HEAD(&storage->list); 333 raw_spin_lock_init(&storage->lock); 334 storage->owner = owner; 335 336 bpf_selem_link_storage_nolock(storage, first_selem); 337 bpf_selem_link_map(smap, first_selem); 338 339 owner_storage_ptr = 340 (struct bpf_local_storage **)owner_storage(smap, owner); 341 /* Publish storage to the owner. 342 * Instead of using any lock of the kernel object (i.e. owner), 343 * cmpxchg will work with any kernel object regardless what 344 * the running context is, bh, irq...etc. 345 * 346 * From now on, the owner->storage pointer (e.g. sk->sk_bpf_storage) 347 * is protected by the storage->lock. Hence, when freeing 348 * the owner->storage, the storage->lock must be held before 349 * setting owner->storage ptr to NULL. 350 */ 351 prev_storage = cmpxchg(owner_storage_ptr, NULL, storage); 352 if (unlikely(prev_storage)) { 353 bpf_selem_unlink_map(first_selem); 354 err = -EAGAIN; 355 goto uncharge; 356 357 /* Note that even first_selem was linked to smap's 358 * bucket->list, first_selem can be freed immediately 359 * (instead of kfree_rcu) because 360 * bpf_local_storage_map_free() does a 361 * synchronize_rcu_mult (waiting for both sleepable and 362 * normal programs) before walking the bucket->list. 363 * Hence, no one is accessing selem from the 364 * bucket->list under rcu_read_lock(). 365 */ 366 } 367 368 return 0; 369 370 uncharge: 371 kfree(storage); 372 mem_uncharge(smap, owner, sizeof(*storage)); 373 return err; 374 } 375 376 /* sk cannot be going away because it is linking new elem 377 * to sk->sk_bpf_storage. (i.e. sk->sk_refcnt cannot be 0). 378 * Otherwise, it will become a leak (and other memory issues 379 * during map destruction). 380 */ 381 struct bpf_local_storage_data * 382 bpf_local_storage_update(void *owner, struct bpf_local_storage_map *smap, 383 void *value, u64 map_flags, gfp_t gfp_flags) 384 { 385 struct bpf_local_storage_data *old_sdata = NULL; 386 struct bpf_local_storage_elem *selem = NULL; 387 struct bpf_local_storage *local_storage; 388 unsigned long flags; 389 int err; 390 391 /* BPF_EXIST and BPF_NOEXIST cannot be both set */ 392 if (unlikely((map_flags & ~BPF_F_LOCK) > BPF_EXIST) || 393 /* BPF_F_LOCK can only be used in a value with spin_lock */ 394 unlikely((map_flags & BPF_F_LOCK) && 395 !btf_record_has_field(smap->map.record, BPF_SPIN_LOCK))) 396 return ERR_PTR(-EINVAL); 397 398 if (gfp_flags == GFP_KERNEL && (map_flags & ~BPF_F_LOCK) != BPF_NOEXIST) 399 return ERR_PTR(-EINVAL); 400 401 local_storage = rcu_dereference_check(*owner_storage(smap, owner), 402 bpf_rcu_lock_held()); 403 if (!local_storage || hlist_empty(&local_storage->list)) { 404 /* Very first elem for the owner */ 405 err = check_flags(NULL, map_flags); 406 if (err) 407 return ERR_PTR(err); 408 409 selem = bpf_selem_alloc(smap, owner, value, true, gfp_flags); 410 if (!selem) 411 return ERR_PTR(-ENOMEM); 412 413 err = bpf_local_storage_alloc(owner, smap, selem, gfp_flags); 414 if (err) { 415 kfree(selem); 416 mem_uncharge(smap, owner, smap->elem_size); 417 return ERR_PTR(err); 418 } 419 420 return SDATA(selem); 421 } 422 423 if ((map_flags & BPF_F_LOCK) && !(map_flags & BPF_NOEXIST)) { 424 /* Hoping to find an old_sdata to do inline update 425 * such that it can avoid taking the local_storage->lock 426 * and changing the lists. 427 */ 428 old_sdata = 429 bpf_local_storage_lookup(local_storage, smap, false); 430 err = check_flags(old_sdata, map_flags); 431 if (err) 432 return ERR_PTR(err); 433 if (old_sdata && selem_linked_to_storage_lockless(SELEM(old_sdata))) { 434 copy_map_value_locked(&smap->map, old_sdata->data, 435 value, false); 436 return old_sdata; 437 } 438 } 439 440 if (gfp_flags == GFP_KERNEL) { 441 selem = bpf_selem_alloc(smap, owner, value, true, gfp_flags); 442 if (!selem) 443 return ERR_PTR(-ENOMEM); 444 } 445 446 raw_spin_lock_irqsave(&local_storage->lock, flags); 447 448 /* Recheck local_storage->list under local_storage->lock */ 449 if (unlikely(hlist_empty(&local_storage->list))) { 450 /* A parallel del is happening and local_storage is going 451 * away. It has just been checked before, so very 452 * unlikely. Return instead of retry to keep things 453 * simple. 454 */ 455 err = -EAGAIN; 456 goto unlock_err; 457 } 458 459 old_sdata = bpf_local_storage_lookup(local_storage, smap, false); 460 err = check_flags(old_sdata, map_flags); 461 if (err) 462 goto unlock_err; 463 464 if (old_sdata && (map_flags & BPF_F_LOCK)) { 465 copy_map_value_locked(&smap->map, old_sdata->data, value, 466 false); 467 selem = SELEM(old_sdata); 468 goto unlock; 469 } 470 471 if (gfp_flags != GFP_KERNEL) { 472 /* local_storage->lock is held. Hence, we are sure 473 * we can unlink and uncharge the old_sdata successfully 474 * later. Hence, instead of charging the new selem now 475 * and then uncharge the old selem later (which may cause 476 * a potential but unnecessary charge failure), avoid taking 477 * a charge at all here (the "!old_sdata" check) and the 478 * old_sdata will not be uncharged later during 479 * bpf_selem_unlink_storage_nolock(). 480 */ 481 selem = bpf_selem_alloc(smap, owner, value, !old_sdata, gfp_flags); 482 if (!selem) { 483 err = -ENOMEM; 484 goto unlock_err; 485 } 486 } 487 488 /* First, link the new selem to the map */ 489 bpf_selem_link_map(smap, selem); 490 491 /* Second, link (and publish) the new selem to local_storage */ 492 bpf_selem_link_storage_nolock(local_storage, selem); 493 494 /* Third, remove old selem, SELEM(old_sdata) */ 495 if (old_sdata) { 496 bpf_selem_unlink_map(SELEM(old_sdata)); 497 bpf_selem_unlink_storage_nolock(local_storage, SELEM(old_sdata), 498 false, true); 499 } 500 501 unlock: 502 raw_spin_unlock_irqrestore(&local_storage->lock, flags); 503 return SDATA(selem); 504 505 unlock_err: 506 raw_spin_unlock_irqrestore(&local_storage->lock, flags); 507 if (selem) { 508 mem_uncharge(smap, owner, smap->elem_size); 509 kfree(selem); 510 } 511 return ERR_PTR(err); 512 } 513 514 static u16 bpf_local_storage_cache_idx_get(struct bpf_local_storage_cache *cache) 515 { 516 u64 min_usage = U64_MAX; 517 u16 i, res = 0; 518 519 spin_lock(&cache->idx_lock); 520 521 for (i = 0; i < BPF_LOCAL_STORAGE_CACHE_SIZE; i++) { 522 if (cache->idx_usage_counts[i] < min_usage) { 523 min_usage = cache->idx_usage_counts[i]; 524 res = i; 525 526 /* Found a free cache_idx */ 527 if (!min_usage) 528 break; 529 } 530 } 531 cache->idx_usage_counts[res]++; 532 533 spin_unlock(&cache->idx_lock); 534 535 return res; 536 } 537 538 static void bpf_local_storage_cache_idx_free(struct bpf_local_storage_cache *cache, 539 u16 idx) 540 { 541 spin_lock(&cache->idx_lock); 542 cache->idx_usage_counts[idx]--; 543 spin_unlock(&cache->idx_lock); 544 } 545 546 int bpf_local_storage_map_alloc_check(union bpf_attr *attr) 547 { 548 if (attr->map_flags & ~BPF_LOCAL_STORAGE_CREATE_FLAG_MASK || 549 !(attr->map_flags & BPF_F_NO_PREALLOC) || 550 attr->max_entries || 551 attr->key_size != sizeof(int) || !attr->value_size || 552 /* Enforce BTF for userspace sk dumping */ 553 !attr->btf_key_type_id || !attr->btf_value_type_id) 554 return -EINVAL; 555 556 if (!bpf_capable()) 557 return -EPERM; 558 559 if (attr->value_size > BPF_LOCAL_STORAGE_MAX_VALUE_SIZE) 560 return -E2BIG; 561 562 return 0; 563 } 564 565 static struct bpf_local_storage_map *__bpf_local_storage_map_alloc(union bpf_attr *attr) 566 { 567 struct bpf_local_storage_map *smap; 568 unsigned int i; 569 u32 nbuckets; 570 571 smap = bpf_map_area_alloc(sizeof(*smap), NUMA_NO_NODE); 572 if (!smap) 573 return ERR_PTR(-ENOMEM); 574 bpf_map_init_from_attr(&smap->map, attr); 575 576 nbuckets = roundup_pow_of_two(num_possible_cpus()); 577 /* Use at least 2 buckets, select_bucket() is undefined behavior with 1 bucket */ 578 nbuckets = max_t(u32, 2, nbuckets); 579 smap->bucket_log = ilog2(nbuckets); 580 581 smap->buckets = bpf_map_kvcalloc(&smap->map, sizeof(*smap->buckets), 582 nbuckets, GFP_USER | __GFP_NOWARN); 583 if (!smap->buckets) { 584 bpf_map_area_free(smap); 585 return ERR_PTR(-ENOMEM); 586 } 587 588 for (i = 0; i < nbuckets; i++) { 589 INIT_HLIST_HEAD(&smap->buckets[i].list); 590 raw_spin_lock_init(&smap->buckets[i].lock); 591 } 592 593 smap->elem_size = offsetof(struct bpf_local_storage_elem, 594 sdata.data[attr->value_size]); 595 596 return smap; 597 } 598 599 int bpf_local_storage_map_check_btf(const struct bpf_map *map, 600 const struct btf *btf, 601 const struct btf_type *key_type, 602 const struct btf_type *value_type) 603 { 604 u32 int_data; 605 606 if (BTF_INFO_KIND(key_type->info) != BTF_KIND_INT) 607 return -EINVAL; 608 609 int_data = *(u32 *)(key_type + 1); 610 if (BTF_INT_BITS(int_data) != 32 || BTF_INT_OFFSET(int_data)) 611 return -EINVAL; 612 613 return 0; 614 } 615 616 bool bpf_local_storage_unlink_nolock(struct bpf_local_storage *local_storage) 617 { 618 struct bpf_local_storage_elem *selem; 619 bool free_storage = false; 620 struct hlist_node *n; 621 622 /* Neither the bpf_prog nor the bpf_map's syscall 623 * could be modifying the local_storage->list now. 624 * Thus, no elem can be added to or deleted from the 625 * local_storage->list by the bpf_prog or by the bpf_map's syscall. 626 * 627 * It is racing with bpf_local_storage_map_free() alone 628 * when unlinking elem from the local_storage->list and 629 * the map's bucket->list. 630 */ 631 hlist_for_each_entry_safe(selem, n, &local_storage->list, snode) { 632 /* Always unlink from map before unlinking from 633 * local_storage. 634 */ 635 bpf_selem_unlink_map(selem); 636 /* If local_storage list has only one element, the 637 * bpf_selem_unlink_storage_nolock() will return true. 638 * Otherwise, it will return false. The current loop iteration 639 * intends to remove all local storage. So the last iteration 640 * of the loop will set the free_cgroup_storage to true. 641 */ 642 free_storage = bpf_selem_unlink_storage_nolock( 643 local_storage, selem, false, false); 644 } 645 646 return free_storage; 647 } 648 649 struct bpf_map * 650 bpf_local_storage_map_alloc(union bpf_attr *attr, 651 struct bpf_local_storage_cache *cache) 652 { 653 struct bpf_local_storage_map *smap; 654 655 smap = __bpf_local_storage_map_alloc(attr); 656 if (IS_ERR(smap)) 657 return ERR_CAST(smap); 658 659 smap->cache_idx = bpf_local_storage_cache_idx_get(cache); 660 return &smap->map; 661 } 662 663 void bpf_local_storage_map_free(struct bpf_map *map, 664 struct bpf_local_storage_cache *cache, 665 int __percpu *busy_counter) 666 { 667 struct bpf_local_storage_map_bucket *b; 668 struct bpf_local_storage_elem *selem; 669 struct bpf_local_storage_map *smap; 670 unsigned int i; 671 672 smap = (struct bpf_local_storage_map *)map; 673 bpf_local_storage_cache_idx_free(cache, smap->cache_idx); 674 675 /* Note that this map might be concurrently cloned from 676 * bpf_sk_storage_clone. Wait for any existing bpf_sk_storage_clone 677 * RCU read section to finish before proceeding. New RCU 678 * read sections should be prevented via bpf_map_inc_not_zero. 679 */ 680 synchronize_rcu(); 681 682 /* bpf prog and the userspace can no longer access this map 683 * now. No new selem (of this map) can be added 684 * to the owner->storage or to the map bucket's list. 685 * 686 * The elem of this map can be cleaned up here 687 * or when the storage is freed e.g. 688 * by bpf_sk_storage_free() during __sk_destruct(). 689 */ 690 for (i = 0; i < (1U << smap->bucket_log); i++) { 691 b = &smap->buckets[i]; 692 693 rcu_read_lock(); 694 /* No one is adding to b->list now */ 695 while ((selem = hlist_entry_safe( 696 rcu_dereference_raw(hlist_first_rcu(&b->list)), 697 struct bpf_local_storage_elem, map_node))) { 698 if (busy_counter) { 699 migrate_disable(); 700 this_cpu_inc(*busy_counter); 701 } 702 bpf_selem_unlink(selem, false); 703 if (busy_counter) { 704 this_cpu_dec(*busy_counter); 705 migrate_enable(); 706 } 707 cond_resched_rcu(); 708 } 709 rcu_read_unlock(); 710 } 711 712 /* While freeing the storage we may still need to access the map. 713 * 714 * e.g. when bpf_sk_storage_free() has unlinked selem from the map 715 * which then made the above while((selem = ...)) loop 716 * exit immediately. 717 * 718 * However, while freeing the storage one still needs to access the 719 * smap->elem_size to do the uncharging in 720 * bpf_selem_unlink_storage_nolock(). 721 * 722 * Hence, wait another rcu grace period for the storage to be freed. 723 */ 724 synchronize_rcu(); 725 726 kvfree(smap->buckets); 727 bpf_map_area_free(smap); 728 } 729